Power factor Enhancement in EV Charger fed by a New Modified BL Converter

Existing EV chargers use a strong non - linear diode bridge rectifier to deliver Direct Current voltage at the DC-DC converter's input, which degrades input AC current power factor. Due to these issues, typical battery chargers must eliminate the input bridge to improve power factor. This resea...

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Main Authors: Begum Moshina, Raveendhra D., Pakkiraiah B.
Format: Article
Language:English
Published: EDP Sciences 2023-01-01
Series:E3S Web of Conferences
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2023/28/e3sconf_icmed-icmpc2023_01102.pdf
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author Begum Moshina
Raveendhra D.
Pakkiraiah B.
author_facet Begum Moshina
Raveendhra D.
Pakkiraiah B.
author_sort Begum Moshina
collection DOAJ
description Existing EV chargers use a strong non - linear diode bridge rectifier to deliver Direct Current voltage at the DC-DC converter's input, which degrades input AC current power factor. Due to these issues, typical battery chargers must eliminate the input bridge to improve power factor. This research paper main aim to improve the front end power factor by using bridge less landsman converter. It is combination of PFC converter and isolated fly back converter to operate between constant current and constant voltage modes. The modified PFC should achieve the constant DC-link voltage and improve the power factor up to unity. It also provide the improve in power quality, low device stress, low input and output ripples, and low input current harmonics when compared with bridge converter.
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spelling doaj.art-1ea0a32c2272402d8b97e1fa439519742023-06-09T09:11:31ZengEDP SciencesE3S Web of Conferences2267-12422023-01-013910110210.1051/e3sconf/202339101102e3sconf_icmed-icmpc2023_01102Power factor Enhancement in EV Charger fed by a New Modified BL ConverterBegum Moshina0Raveendhra D.1Pakkiraiah B.2Department of Electrical and Electronics Engineering, Gokaraju Rangaraju Institute of Engineering and TechnologyDepartment of Electrical and Electronics Engineering, Gokaraju Rangaraju Institute of Engineering and TechnologyDepartment of Electrical and Electronics Engineering, Gokaraju Rangaraju Institute of Engineering and TechnologyExisting EV chargers use a strong non - linear diode bridge rectifier to deliver Direct Current voltage at the DC-DC converter's input, which degrades input AC current power factor. Due to these issues, typical battery chargers must eliminate the input bridge to improve power factor. This research paper main aim to improve the front end power factor by using bridge less landsman converter. It is combination of PFC converter and isolated fly back converter to operate between constant current and constant voltage modes. The modified PFC should achieve the constant DC-link voltage and improve the power factor up to unity. It also provide the improve in power quality, low device stress, low input and output ripples, and low input current harmonics when compared with bridge converter.https://www.e3s-conferences.org/articles/e3sconf/pdf/2023/28/e3sconf_icmed-icmpc2023_01102.pdf
spellingShingle Begum Moshina
Raveendhra D.
Pakkiraiah B.
Power factor Enhancement in EV Charger fed by a New Modified BL Converter
E3S Web of Conferences
title Power factor Enhancement in EV Charger fed by a New Modified BL Converter
title_full Power factor Enhancement in EV Charger fed by a New Modified BL Converter
title_fullStr Power factor Enhancement in EV Charger fed by a New Modified BL Converter
title_full_unstemmed Power factor Enhancement in EV Charger fed by a New Modified BL Converter
title_short Power factor Enhancement in EV Charger fed by a New Modified BL Converter
title_sort power factor enhancement in ev charger fed by a new modified bl converter
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2023/28/e3sconf_icmed-icmpc2023_01102.pdf
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AT pakkiraiahb powerfactorenhancementinevchargerfedbyanewmodifiedblconverter